In this work a comparison between the plane and spherical reflection coefficient is given for different types of porous materials, backed by a hard and impervious surface, both theoretically and experimentally. For this purpose also a method to determine the spherical reflection coefficient in free-field conditions, starting from sound pressure measurements, is presented. It is based on the propagation model over porous material surface given by Allard. It requires an optimization technique to assess non- acoustical properties of the porous material, if they are unknown, and a free-field and hard floor calibration to take into account the sound source directivity. It is shown that the differences in the reflection coefficient can be s...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In this work a comparison between the plane and spherical reflection coefficient is given for differ...
In this work a comparison between the plane and spherical reflection coefficient is given for differ...
The knowledge of the sound field is important in many studies of acoustics. The more boundary condit...
The knowledge of the sound field is important in many studies of acoustics. The more boundary condit...
Many noise control applications are based on the use of porous materials; therefore, it is important...
Many noise control applications are based on the use of porous materials; therefore, it is important...
Many noise control applications are based on the use of porous materials; therefore, it is important...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The inverse problem for waves reflected by porous material is solved at oblique incidence, and an in...
The inverse problem for waves reflected by porous material is solved at oblique incidence, and an in...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In this work a comparison between the plane and spherical reflection coefficient is given for differ...
In this work a comparison between the plane and spherical reflection coefficient is given for differ...
The knowledge of the sound field is important in many studies of acoustics. The more boundary condit...
The knowledge of the sound field is important in many studies of acoustics. The more boundary condit...
Many noise control applications are based on the use of porous materials; therefore, it is important...
Many noise control applications are based on the use of porous materials; therefore, it is important...
Many noise control applications are based on the use of porous materials; therefore, it is important...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The sound absorption coefficient describes the ability of a porous material to absorb energy. It dep...
The inverse problem for waves reflected by porous material is solved at oblique incidence, and an in...
The inverse problem for waves reflected by porous material is solved at oblique incidence, and an in...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...
In numerical simulations a porous material with a rigid skeleton is modelled as an equivalent fluid ...